Laboratory of Physical Chemistry, ETH Zurich, 8093 Zurich, Switzerland.
J Comput Aided Mol Des. 2012 Dec;26(12):1293-309. doi: 10.1007/s10822-012-9620-8. Epub 2012 Dec 18.
Water molecules in the binding pocket of a protein and their role in ligand binding have increasingly raised interest in recent years. Displacement of such water molecules by ligand atoms can be either favourable or unfavourable for ligand binding depending on the change in free enthalpy. In this study, we investigate the displacement of water molecules by an apolar probe in the binding pocket of two proteins, cyclin-dependent kinase 2 and tRNA-guanine transglycosylase, using the method of enveloping distribution sampling (EDS) to obtain free enthalpy differences. In both cases, a ligand core is placed inside the respective pocket and the remaining water molecules are converted to apolar probes, both individually and in pairs. The free enthalpy difference between a water molecule and a CH(3) group at the same location in the pocket in comparison to their presence in bulk solution calculated from EDS molecular dynamics simulations corresponds to the binding free enthalpy of CH(3) at this location. From the free enthalpy difference and the enthalpy difference, the entropic contribution of the displacement can be obtained too. The overlay of the resulting occupancy volumes of the water molecules with crystal structures of analogous ligands shows qualitative correlation between experimentally measured inhibition constants and the calculated free enthalpy differences. Thus, such an EDS analysis of the water molecules in the binding pocket may give valuable insight for potency optimization in drug design.
近年来,蛋白质结合口袋中的水分子及其在配体结合中的作用引起了越来越多的关注。根据自由焓的变化,配体原子取代结合口袋中的水分子可以有利于或不利于配体结合。在这项研究中,我们使用包络分布采样(EDS)方法研究了在两种蛋白质,细胞周期蛋白依赖性激酶 2 和 tRNA 鸟嘌呤转移酶的结合口袋中,非极性探针取代水分子的情况,以获得自由焓差。在这两种情况下,将配体核心置于各自的口袋中,并将其余的水分子转换为非极性探针,分别和成对地转换。从 EDS 分子动力学模拟中计算出的与在口袋中同一位置的水分子和 CH(3) 基团与在本体溶液中存在时的自由焓差,对应于该位置上 CH(3) 的结合自由焓。从自由焓差和焓差可以得到取代的熵贡献。与类似配体的晶体结构进行重叠后,水分子的结果占有率体积显示出实验测量的抑制常数与计算的自由焓差之间存在定性相关性。因此,这种对结合口袋中水分子的 EDS 分析可以为药物设计中的效力优化提供有价值的见解。